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Thermal energy storage by microcomposite of a phase change material and ethyl cellulose

机译:通过相变材料和乙基纤维素的微复合材料进行热能存储

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Phase change materials (PCMs) are capable of storing and releasing large amounts of latent heat thermal energy when undergoing phase change. They are developed for various building applications such as thermal energy storage, thermal protection, cooling, air-conditioning, waste heat recovery and for solar heating systems. Paraffin PCMs are low cost, have a moderate thermal energy density, but low thermal conductivity. PCM microencapsulation is one of the best tools to enhance the heat transfer rate by enlarging the surface area. In this work, ethyl cellulose as an environmental friendly encapsulating material was used to entrap n-hexadecane PCM by an emulsion-solvent evaporation method using poly(vinyl alcohol) (PVA), Tween 80 or poly(methacrylic acid sodium salt) (PMAA) emulsifier. The structure of the forming microparticles was predicted by determining the interfacial tensions between the phases. Both theoretically and in the experiments, composites prepared with PMAA showed the most desirable properties regarding the size (average: 80 μm) and the latent heat storage capacity (of melting and freezing were 111.4 J/g and 117.9 J/g, respectively). Furthermore, there was no significant temperature and enthalpy change observed after 1000 heating-cooling thermal cycles. Thus, this microcomposite can be considered as suitable encapsulated PCM for thermal energy storage applications.
机译:当发生相变时,相变材料(PCM)能够存储和释放大量潜热热能。它们是为各种建筑应用而开发的,例如热能存储,热保护,冷却,空调,废热回收以及太阳能供热系统。石蜡PCM价格低廉,具有中等的热能密度,但热导率却很低。 PCM微囊化是通过增加表面积来提高传热速率的最佳工具之一。在这项工作中,使用乙基纤维素作为环保封装材料,通过乳液溶剂蒸发法,使用聚乙烯醇(PVA),吐温80或聚甲基丙烯酸钠盐(PMAA)来捕获正十六烷PCM。乳化剂。通过确定相之间的界面张力来预测形成的微粒的结构。从理论上和在实验中,用PMAA制备的复合材料在尺寸(平均:80μm)和潜热存储能力(熔融和冻结的潜热能力分别为111.4 J / g和117.9 J / g)方面都表现出最理想的性能。此外,经过1000次加热-冷却热循环后,没有观察到明显的温度和焓变。因此,该微复合物可以被认为是用于热能存储应用的合适的封装的PCM。

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